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Rapid thermal cycling by eddy current inducted heating on optical property and thermostability of high power LED

机译:通过涡流电流加热对光学性能的快速热循环和高功率LED的热稳定性

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The effect of rapid thermal cycling by eddy current inducted heating on optical property and thermostability of high power light emitting diode(LED)is investigated in the present study. With the application of high-frequency power device, the specimen that was being operated life test in the experiment was rapidly heated and cooled based on a control system that employs a fuzzy logic algorithm. The high and low temperature distribution in LED chip was simulated by finite element modeling(FEM). The optical properties of single LED was tested and analyzed by integrating sphere. It was found that rapid thermal cycling has an evident influence on luminous flux and luminous efficiency and radiant power. The results showed that the color purity of LED was also descended, but the correlated color temperature (CCT) was risen. The results indicate that this approach to rapid thermal cycling by eddy current is feasible to investigate optical property and thermostability of high power LED, so it can also effectively verify the reliability of LED devices.
机译:在本研究中研究了涡流电流电流对光学性能和高功率发光二极管(LED)的光学性能的快速热循环的影响和高功率发光二极管(LED)的热稳定性。随着高频功率装置的应用,基于采用模糊逻辑算法的控制系统,快速加热和冷却在实验中正在操作的寿命测试的样本。通过有限元建模(FEM)模拟LED芯片中的高温和低温分布。通过整合球体测试并分析单个LED的光学性质。发现快速热循环对发光通量和发光效率和辐射功率具有明显的影响。结果表明,LED的颜色纯度也降下来,但上升了相关的色温(CCT)。结果表明,这种涡流快速热循环的方法是可行的,可以研究高功率LED的光学性能和热稳定性,因此还可以有效地验证LED器件的可靠性。

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